HPMC powder for Turkmenistan
HPMC powder for Turkmenistan: A High-quality Product for Various Applications
If you're looking for a versatile, high-performance powder for various applications, then you should consider HPMC powder. It's a non-toxic and non-ionic substance that's soluble in both cold and hot water. One of the best things about HPMC powder is that it's compatible with other materials, meaning it can be used as an adhesive, thickener, emulsifier, and binder in various industries.
HPMC powder is widely used in the construction industry, to improve the performance of cement and mortar, and in the food industry, especially in the production of processed meat and dairy products. It's also used in the pharmaceutical industry, in the manufacture of tablets, capsules, and ointments, as well as in the cosmetics industry, in the production of creams, lotions, and other beauty products.
At our company, we produce high-quality HPMC powder for Turkmenistan, using advanced technology and rigorous quality control measures to ensure that our product meets the highest standards of excellence. Our HPMC powder is available in different forms, grades, and viscosities, depending on your specific needs and requirements.
Our HPMC powder is fine and white, with good water solubility and thermal stability. It's also odorless and tasteless, making it suitable for use in food and pharmaceutical applications. Additionally, our HPMC powder is packaged in high-quality, moisture-resistant bags, to ensure that it remains fresh and effective for longer periods.
We're proud to offer our HPMC powder for Turkmenistan at competitive prices, and with fast and reliable delivery to any location in the country. We're confident that our customers will be satisfied with the quality and performance of our HPMC powder, and we offer a money-back guarantee for any orders that don't meet their expectations.
If you're looking for a trusted supplier of HPMC powder for Turkmenistan, then look no further than our company. Contact us today to learn more about our products and services, and to place your order. We also offer our HPMC powder to other countries such as Morocco, India, Philippines, Russia, and the United States.
Faq
What is the main function of HPMC in putty powder and does it undergo a chemical reaction?
The viscosity of HPMC is inversely proportional to temperature, meaning that viscosity increases as temperature decreases. When we refer to the viscosity of a certain product, it generally refers to the measurement result of its 2% water solution at 20 degrees Celsius.
In practical applications, in regions with large temperature differences between summer and winter, it is advisable to use relatively lower viscosity during winter for better construction. Otherwise, at low temperatures, the viscosity of the cellulose increases, resulting in a heavier feel during application.
Medium viscosity: 75,000-100,000 (mainly used for putty)
Reason: Good water retention.
High viscosity: 150,000-200,000 (mainly used for polystyrene particle insulation mortar powder and foamed glass bead insulation mortar)
Reason: High viscosity, reduces mortar dusting and sagging, improves construction.
However, in general, higher viscosity provides better water retention. Therefore, many dry mortar manufacturers consider using medium-viscosity cellulose (75,000-100,000) instead of low-viscosity cellulose (20,000-40,000) to reduce the dosage and costs.
How to choose the appropriate hydroxypropyl methylcellulose (HPMC) for different applications?
HPMC can be divided into two types: instant soluble and heat soluble. Instant soluble HPMC quickly disperses in cold water, disappearing in the water. At this stage, the liquid does not have viscosity because HPMC is only dispersed in the water and not completely dissolved. After about 2 minutes, the viscosity of the liquid gradually increases, forming a transparent and viscous colloidal solution. Heat soluble HPMC tends to agglomerate in cold water but can rapidly disperse in hot water, disappearing in it. As the temperature decreases to a certain point, viscosity slowly appears until a transparent and viscous colloidal solution is formed. Heat soluble HPMC can only be used in putty powder and mortar, as it tends to agglomerate in liquid adhesives and coatings and cannot be used effectively. Instant soluble HPMC has a wider range of applications and can be used in putty powder, mortar, liquid adhesives, and coatings without any restrictions.
What is the difference between the cold-water soluble type and the thermal soluble type of hydroxypropyl methylcellulose (HPMC) in the production process?
The main raw materials for Hydroxypropyl Methylcellulose (HPMC) include refined cotton, chloromethane, epichlorohydrin, and other materials such as soda ash, acid, toluene, isopropanol, etc.
How to choose the appropriate hydroxypropyl methylcellulose (HPMC) for different applications?
In the application of HPMC in putty powder, it plays three roles: thickening, water retention, and facilitating construction. Thickening: Cellulose can thicken the mixture, maintain uniform suspension, and prevent sagging. Water retention: It slows down the drying process of putty powder and assists in the reaction of lime and calcium in water. Construction: Cellulose acts as a lubricant, improving the workability of the putty powder. HPMC does not participate in any chemical reactions; it only serves as an auxiliary agent. When putty powder is mixed with water and applied to the wall, a chemical reaction occurs because new substances are formed. However, if the putty powder is scraped off the wall, ground into powder, and reused, it is not suitable because a new substance (calcium carbonate) has already formed. The main components of lime and calcium powder are Ca(OH)2, CaO, and a small amount of CaCO3. The reaction can be represented as: CaO + H2O = Ca(OH)2 — Ca(OH)2 + CO2 = CaCO3 ↓ + H2O. Under the action of water and carbon dioxide in the air, lime and calcium carbonate are formed. HPMC only assists in water retention and the better reaction of lime and calcium; it does not participate in any reactions itself.